首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Flexible opto-electronics enabled microfluidics systems with cloud connectivity for point-of-care micronutrient analysis
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Flexible opto-electronics enabled microfluidics systems with cloud connectivity for point-of-care micronutrient analysis

机译:具有云连接功能的灵活的光电技术支持微流控系统,可进行即时护理微量营养素分析

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摘要

In developing countries, the deployment of medical diagnostic technologies remains a challenge because of infrastructural limitations (e.g. refrigeration, electricity), and paucity of health professionals, distribution centers and transportation systems. Here we demonstrate the technical development and clinical testing of a novel electronics enabled microfluidic paper-based analytical device (EE-mu PAD) for quantitative measurement of micronutrient concentrations in decentralized, resource-limited settings. The system performs immune-detection using paper-based microfluidics, instrumented with flexible electronics and optoelectronic sensors in a mechanically robust, ultrathin format comparable in size to a credit card. Autonomous self-calibration, plasma separation, flow monitoring, timing and data storage enable multiple devices to be run simultaneously. Measurements are wirelessly transferred to a mobile phone application that geo-tags the data and transmits it to a remote server for real time tracking of micronutrient deficiencies. Clinical tests of micronutrient levels from whole blood samples (n=95) show comparable sensitivity and specificity to ELISA-based tests. These results demonstrate instantaneous acquisition and global aggregation of diagnostics data using a fully integrated point of care system that will enable rapid and distributed surveillance of disease prevalence and geographical progression. (C) 2015 Elsevier B.V. All rights reserved.
机译:在发展中国家,由于基础设施的局限性(例如制冷,电力)以及卫生专业人员,配送中心和运输系统的匮乏,医疗诊断技术的部署仍然是一个挑战。在这里,我们展示了一种新型的基于电子技术的,基于微流控纸的电子分析设备(EE-mu PAD)的技术开发和临床测试,该设备可用于在分散,资源有限的环境中定量测量微量营养素的浓度。该系统使用纸质微流控技术执行免疫检测,并配备了柔性电子设备和光电传感器,具有机械坚固,超薄格式,大小可与信用卡媲美。自主的自我校准,血浆分离,流量监控,定时和数据存储使多个设备可以同时运行。测量值无线传输到移动电话应用程序,该应用程序对数据进行地理标记,然后将其传输到远程服务器,以实时跟踪微量营养素缺乏症。全血样本中微量营养素水平的临床测试(n = 95)显示出与基于ELISA的测试相当的敏感性和特异性。这些结果表明,使用完全集成的护理点系统可以即时获取和全局汇总诊断数据,从而可以对疾病患病率和地理进程进行快速且分布式的监视。 (C)2015 Elsevier B.V.保留所有权利。

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